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The Antrim–Galway Line: a resolution of the Highland Border Fault enigma of the Caledonides of Britain and Ireland

Published online by Cambridge University Press:  01 May 2009

P. D. Ryan
Affiliation:
Geology Department, University College, Galway, Ireland
N. J. Soper
Affiliation:
Department of Earth Sciences, University of Leeds, Leeds LS2 9JT, UK
D. B. Snyder
Affiliation:
B.I.R.P.S., Bullard Laboratories, Madingley Rise, Madingley Road, sCambridge CB3 0EZ, UK
R. W. England
Affiliation:
B.I.R.P.S., Bullard Laboratories, Madingley Rise, Madingley Road, sCambridge CB3 0EZ, UK
D. H. W. Hutton
Affiliation:
Department of Geological Sciences, Science Laboratories, South Road, Durham DH1 3LE, UK

Abstract

The westward continuation of the Highland Border fault of Scotland (HBFZ) into Ireland is problematic. It is widely thought to follow a pronounced magnetic and gravity lineament, the Fair Head-Clew Bay Line (FCL). The advantage of this interpretation is that it places all the Ordovician ophiolitic complexes and associated sedimentary basins to the south of the FCL, which would represent the contact between Laurentia and the outboard terranes. Its main shortcomings are that both the deep structure and timing of strike-slip are different on the HBFZ and FCL. In Ireland the FCL is a north-dipping feature that can be traced to the Moho on BIRPS profiles, while the HBFZ has no such signature. Terrane amalgamation in western Ireland was completed by the late Ordovician, while in Scotland the Midland Valley terrane did not finally dock until the early Devonian. These considerations suggest that in western Ireland a branch of the HBFZ exists, which was active in post-Ordovician time and must lie south of Connemara. An examination of Irish geological, geophysical and image-processed magnetic data shows that a profound lineament can be traced from Antrim to Galway Bay (the Antrim–Galway Line). Stitching plutons date movement on it as pre-405 Ma. We propose that the Antrim–Galway Line represents the continuation of the Scottish HBFZ, while the FCL is a preserved Ordovician splay of the HBFZ system whose northdipping geometry is a product of Ordovician collapse of the orogen in western Ireland.

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Articles
Copyright
Copyright © Cambridge University Press 1995

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References

Aftalion, M., van Breeman, O., & Bowes, D., 1984. Age constraints on the basement of the Midland Valley of Scotland. Transactions of the Royal Society of Edinburgh: Earth Sciences 75, 5364.CrossRefGoogle Scholar
Anderton, R., 1980. Did Iapetus start to open during the Cambrian? Nature 286, 706–8.CrossRefGoogle Scholar
Anderton, R., 1985. Sedimentation and tectonics in the Scottish Dalradian. Transactions of the Royal Society of Edinburgh: Earth Sciences 77, 203–22.Google Scholar
Babel Working Group. 1993 a. Evidence for early Proterozoic plate tectonics from seismic reflection profiles in the Baltic Shield. Nature 348, 34–8.Google Scholar
Babel Working Group. 1993 b. Integrated seismic studies of the Baltic Shield using data in the Gulf of Bothnia Region. Geophysics Journal International 112, 304–24.Google Scholar
Barton, P. J., 1992. LISPB revisited: a new look under the Caledonides of northern Britain. Geophysical Journal International 110, 371–91.CrossRefGoogle Scholar
Bluck, B. J., 1984. Pre-carboniferous history of the Midland Valley. Transactions of the Royal Society of Edinburgh: Earth Sciences 75, 275–95.CrossRefGoogle Scholar
Bluck, B. J., Ingham, J. K., Curry, G. B., & Williams, A., 1984. Stratigraphy and tectonic setting of the Highland Border Complex. Transactions of the Royal Society of Edinburgh: Earth Sciences 75, 124–33.Google Scholar
Cliff, R. A., Yardley, B. W. D., & Bussy, F., 1993. U–Pb isotopic dating of fluid infiltration and metasomatism during Dalradian regional metamorphism in Connemara, western Ireland. Journal of Metamorphic Geology 11, 185–91.CrossRefGoogle Scholar
Curry, G. B., Bluck, B. J., Burton, C. J., Ingham, J. K., Siveter, D. J., & Williams, A., 1984. Age, evolution and tectonic history of the Highland Border Complex, Scotland. Transactions of the Royal Society of Edinburgh: Earth Sciences 75, 113–34.CrossRefGoogle Scholar
Curry, K. L., Ingham, J. K., Bluck, B. J., & Williams, A., 1982. The significance of a reliable Ordovician age for some Highland Border rocks in Central Scotland. Journal of the Geological Society, London 139, 451–4.CrossRefGoogle Scholar
Daly, J. S., Muir, R. J., & Cliff, R. A., 1991. A precise U–Pb zircon age for the Inishtrahull syenitic gneiss, County Donegal, Ireland. Journal of the Geological Society, London 148, 639–42.CrossRefGoogle Scholar
Davidson, K. A. S., Sola, M., Powell, D. W., & Hall, J., 1984. Geophysical model for the Midland Valley of Scotland. Transactions of the Royal Society of Edinburgh: Earth Sciences 75, 175–82.CrossRefGoogle Scholar
Dempster, T. J., 1985. Uplift patterns and orogenic evolution in the Scottish Dalradian. Journal of the Geological Society, London 142, 111–28.CrossRefGoogle Scholar
Dempster, T. J., & Bluck, B. J., 1992. The age and tectonic significance of the Bute amphibolite, Highland Border Complex, Scotland. Geological Magazine 128, 7780.CrossRefGoogle Scholar
Dentith, M. C., Trench, A., & Bluck, B. J., 1992. Geophysical constraints on the nature of the Highland Boundary fault zone in western Scotland. Geological Magazine 129, 411–19.CrossRefGoogle Scholar
Dewey, J. F., & Ryan, P. D., 1990. The HBFZ evolution of the South Mayo Trough, western Ireland. Tectonics 9, 887901.CrossRefGoogle Scholar
Dewey, J. F., & Ryan, P. D., 1992. Late-Silurian sediments date the onset of sinistral shear in the Caledonides of western Ireland. Tectonic Studies Group Abstract, Southampton 1992.Google Scholar
Dewey, J. F., & Shackleton, R. M., 1984. A model for the evolution of the Grampian tract in the early Caledonides and Appalachians. Nature 312, 115–21.CrossRefGoogle Scholar
Dickin, A. P., 1992. Evidence for early Proterozoic crustal province in the North Atlantic region. Journal of the Geological Society, London 149, 483–6.CrossRefGoogle Scholar
Dickin, A. P., & Bowes, D. R., 1991. Isotopic evidence for the extent of early Proterozoic basement in Scotland and northwest Ireland. Geological Magazine 128, 385–8.CrossRefGoogle Scholar
Elias, E. M., Macintyre, R. M., & Leake, B. E., 1988. The cooling history of Connemara, western Ireland, from K–Ar and Rb–Sr age studies. Journal of the Geological Society, London 145, 649–60.CrossRefGoogle Scholar
Fitches, W. R., Muir, R. J., Maltman, A. J., & Bentley, M. R., 1990. Is the Colonsay–west Islay block of SW Scotland an allochthonous terrane? Evidence from Dalradian tillite clasts. Journal of the Geological Society, London 147, 417–20.CrossRefGoogle Scholar
Freeman, B., Klemperer, S. L., & Hobbs, R. W., 1988. The deep structure of northern England and the Iapetussuture zone from BIRPS deep seismic reflection profiles. Journal of the Geological Society, London 145, 727–40.CrossRefGoogle Scholar
Geological Survey of Northern Ireland. 1961. Gravity anomaly map of Northern Ireland.Google Scholar
George, T. N., 1960. The stratigraphical evolution of the Midland Valley. Transactions of the Royal Society of Edinburgh 24, 32107.Google Scholar
Graham, C. M., 1976. Petrochemistry and tectonic significance of Dalradian metabasaltic rocks of the S.W. Highlands. Journal of the Geological Society, London 132, 6184.CrossRefGoogle Scholar
Graham, J. R., Wrafter, J. P., Daly, J. S., & Menuge, J. F., 1991. A local source for the Ordovician Derryveeny formation, western Ireland: implications for the Connemara Dalradian. In Developments in Sedimentary Provenance Studies (eds Morton, A. C., Todd, S. P., and Haughton, P. D. W.), pp. 199213. Geological Society, London Special Publication no. 57.Google Scholar
Gray, J. R., & Yardley, B. W. D., 1979. A Caledonian blueschist from the Irish Dalradian. Nature 278, 736–7.CrossRefGoogle Scholar
Hall, J., Brewer, J. A., Matthews, D. H., & Warner, M. R., 1984. Crustal structure across the Caledonides from the WINCH seismic reflection profile: influences on the evolution of the Midland Valley of Scotland. Transactions of the Royal Society of Edinburgh: Earth Sciences 75, 97109.CrossRefGoogle Scholar
Halliday, A. N., 1984. Coupled Sm–Nd and U–Pb systematics in late Caledonian granules and the basement under northern Britain. Nature 307, 229–33.CrossRefGoogle Scholar
Harland, W. B., Scott, R. A., Auckland, K. A., & Snape, I., 1992. The Ny Friesland Orogen, Spitzbergen. Geological Magazine 129, 679708.CrossRefGoogle Scholar
Harper, D. A. T., Williams, D. M., & Armstrong, H. A., 1989. Stratigraphical correlations adjacent to the Highland Boundary fault in the west of Ireland. Journal of the Geological Society, London 146, 381–4.CrossRefGoogle Scholar
Harris, A. L., Baldwin, C. T., Bradbury, H. J., Johnson, H. D., & Smith, R. A., 1978. Ensialic basin sedimentation: the Dalradian Supergroup. In Crustal evolution of Northwestern Britain and adjacent regions (eds Bowes, D. R., and Leake, B. E.), pp. 115–38. Liverpool: Seel House Press.Google Scholar
Harris, D., 1993. The Caledonian tectonic evolution of the Laurentian Margin in western Ireland. Journal of the Geological Society, London 150, 669–72.CrossRefGoogle Scholar
Haughton, P. D. W., 1988. A cryptic Caledonian flysch terrane in Scotland. Journal of the Geological Society, London 145, 685703.CrossRefGoogle Scholar
Haughton, P. D. W., Rogers, G., & Halliday, A. N., 1990. Provenance of Old Red Sandstone conglomerates, SE Kincardineshire; evidence for timing of Caledonian terrane accretion in central Scotland. Journal of the Geological Society, London 147, 104–20.CrossRefGoogle Scholar
Hempton, M. R., & Neher, K., 1986. Experimental fracture, strain and subsidence patterns over en échelon strikeslip faults: implications for the structural evolution of pull-apart basins. Journal of Structural Geology 8, 597605.CrossRefGoogle Scholar
Henderson, W. G., & Robertson, A. H. F., 1982. The Highland Border rocks and their relation to marginal basin development in the Scottish Caledonides. Journal of the Geological Society, London 139, 433–50.CrossRefGoogle Scholar
Higgins, A. K., & Soper, N. J., 1993. Basement–cover relationships in the East Greenland Caledonides: evidence from the Eleonore Bay Supergroup at Ardencaple Fjord. Transactions of the Royal Society of Edinburgh: Earth Sciences 84, 103–15.Google Scholar
Hutton, D. H. W., 1987. Strike-slip terranes and a model for the British and Irish Caledonides. Geological Magazine 124, 405–25.CrossRefGoogle Scholar
Hutton, D. H. W., Aftalion, M., & Halliday, A. N., 1985. An Ordovician ophiolite in County Tyrone, Ireland. Nature 315, 210–12.CrossRefGoogle Scholar
Hutton, D. H. W., & Dewey, J. F., 1986. Palaeozoic terrane accretion in the Western Irish Caledonides. Tectonics 5, 1115–24.CrossRefGoogle Scholar
Hutton, D. H. W., & Holland, C. H., 1992. An Arenig–Llanvirn age for the black shales of Slieve Gallion, County Tyrone. Irish Journal of Earth Sciences 11, 187–9.Google Scholar
Hutton, D. H. W., & McErlean, M., 1992. Silurian and Early Devonian sinistral deformation of the Ratagain Granite, Scotland: constraints on the age of Caledonian movements on the Great Glen fault system. Journal of the Geological Society, London 149, 14.Google Scholar
Jagger, M. D., Max, M. D., Aftalion, M., & Leake, B. E., 1988. U–Pb zircon ages of basic rocks and gneisses intruded into the Dalradian rocks of Cashel, Connemara, western Ireland. Journal of the Geological Society, London 145, 645–8.CrossRefGoogle Scholar
Johnston, M. R. W., & Harris, A. L., 1967. Dalradian—? Arenig relations in part of the Highland Border, Scotland and their significance in the chronology of the Caledonian Orogeny. Scottish Journal of Geology 3, 116.CrossRefGoogle Scholar
Klemperer, S. L., Ryan, P. D., & Snyder, D. B., 1991. A Deep seismic reflection transect across the Irish Caledonides. Journal of the Geological Society, London 148, 149–64.CrossRefGoogle Scholar
Leake, B. E., 1963. The location of the Southern Uplands Fault in central Ireland. Geological Magazine 100, 420–3.CrossRefGoogle Scholar
Leake, B. E., Tanner, P. W. G., Singh, D., & Halliday, A. N., 1983. Major Southward thrusting of the Dalradian rocks of Connemara, western Ireland. Nature 305, 210–13.CrossRefGoogle Scholar
Lowe, C., & Jacob, B., 1989. A north—south seismic profile across the Caledonide suture zone in Ireland. Tectonophysics 168, 297318.CrossRefGoogle Scholar
Marcantonio, F., Dickin, A. P., McNutt, R. H., & Heaman, L. M., 1988. A 1,800 million year old Proterozoic gneiss terrane in Islay with implications for the crustal structure and evolution of Britain. Nature 335, 62–4.CrossRefGoogle Scholar
Max, M. D., & Riddihough, R. P., 1975. The continuation of the Highland Boundary Fault in Ireland. Geology 3, 206–10.2.0.CO;2>CrossRefGoogle Scholar
Max, M. D., & Ryan, P. D., 1975. The Southern Uplands fault and its relation to the metamorphic rocks of Connemara. Geological Magazine 112, 610–12.CrossRefGoogle Scholar
Max, M. D., Ryan, P. D., & Inamdar, D. D., 1983. A magnetic deep structural geology interpretation of Ireland. Tectonics 2, 431–51.CrossRefGoogle Scholar
Morris, P., 1989. A composite Magnetic Map of Ireland. Dublin Institute for Advanced Studies Geophysics Bulletin no. 42.Google Scholar
Muir, R. J., Fitches, W. R., & Maltman, A. J., 1991. Rhinns complex: a missing link in the Proterozoic basement of the North Atlantic region. Geology 20, 1043–6.2.3.CO;2>CrossRefGoogle Scholar
Murphy, F. C., Andersen, T. B., Daly, J. S., Gallagher, V., Graham, J. R., Harper, D. A. T., Johnston, J. D., Kennan, P. S., Kennedy, M. J., Long, C. B., Morris, J. H., O’keeffe, W. G., Parkes, M., Ryan, P. D., Sloan, M., Stillman, C. J., Tietzsch-Tyler, D., Todd, S. P., & Wrafter, J. P., 1991. An appraisal of Caledonian suspect terranes in Ireland. Irish Journal of Earth Sciences 11, 1141.Google Scholar
Mykura, W., 1991. Old Red Sandstone. In Geology of Scotland (ed. Craig, G. Y.), pp. 297314. London: The Geological Society.Google Scholar
Palmer, D., Johnston, J. D., Dooley, T., & Maguire, K., 1989. The Silurian of Clew Bay, Ireland: part of the Midland Valley of Scotland. Journal of the Geological Society, London 146, 385–8.CrossRefGoogle Scholar
Paterson, I. B., & Harris, A. L., 1969. Lower Old Red Sandstone ignimbrites from Dunkeld, Perthshire. Institute of Geological Sciences Report 1969/70.Google Scholar
Pidgeon, R. T., & Aftalion, M., 1978. Cogenetic and inherited zircon systems in granites: Palaeozoic granites of Scotland and England. In Crustal evolution in northwest Britain and adjacent regions (eds Bowes, D. R., and Leake, B. E.), pp. 183248. Geological Journal Special Issue no. 10.Google Scholar
Pidgeon, R. T., & Compston, W., 1992. A SHRIMP ion microprobe study of inherited zircons from four Scottish granites. Transactions of the Royal Society of Edinburgh: Earth Sciences 83, 473–83.CrossRefGoogle Scholar
Rogers, G., Dempster, T. J., Bluck, B. J., & Tanner, P. W. G., 1989. A high-precision U–Pb age for the Ben Vuirich granite: Implications for the evolution of the Scottish Dalradian Supergroup. Journal of the Geological Society, London 146, 789–98.CrossRefGoogle Scholar
Ryan, P. D., & Dewey, J. F., 1991. A geological and tectonic cross-section of the Caledonides of western Ireland. Journal of the Geological Society, London 148, 173–80.CrossRefGoogle Scholar
Ryan, P. D., Sawal, V., & Rowlands, A. S., 1983. Ophiolitic melange separates the ortho- and paratectonic Caledonides in Western Ireland. Nature 301, 5052.CrossRefGoogle Scholar
Sanders, I. S., Daly, J. S., & Davies, G. R., 1987. Late Proterozoic high-pressure granulite facies metamorphism in the north-east Ox inlier, north-west Ireland. Journal of Metamorphic Geology 5, 6985.CrossRefGoogle Scholar
Sanderson, D. J., Andrews, J. R., Phillips, W. E. A., & Hutton, D. H. W., 1980. Deformation studies in the Irish Caledonides. Journal of the Geological Society, London 137, 289302.CrossRefGoogle Scholar
Simon, J. B., 1984. Sedimentation and tectonic setting of the Lower Old Red Sandstone of the Fintona and Curlew Mountain districts. Irish Journal of Earth Sciences 6, 213228.Google Scholar
Simon, J. B., 1985. Provenance and setting of some Ordovician and Silurian conglomerates in Northern Ireland. Scottish Journal of Geology 22, 6376.CrossRefGoogle Scholar
Sönderholm, M., & Tirsgaard, H., 1993. Lithoslratigraphic framework of the Upper Proterozoic Eleonore Bay Subgroup of East and North-East Greenland. Grönlands Geologiske Undersögelse Bulletin no. 167, 38 pp.Google Scholar
Soper, N. J., 1994 a. Neoproterozoic sedimentation on the NE margin of Laurentia and the opening of Iapetus. Geological Magazine 131, 291299.CrossRefGoogle Scholar
Soper, N. J., 1994 b. Was Scotland a Vendian RRR junction? Journal of the Geological Society, London 151, 579–82.CrossRefGoogle Scholar
Soper, N. J., England, R. W., Snyder, D. B., & Ryan, P. D., 1992. The Iapetus Suture zone in England, Scotland and eastern Ireland: a reconciliation of geological and deep seismic data. Journal of the Geological Society, London 149, 697700.CrossRefGoogle Scholar
Soper, N. J., Webb, B. C., & Woodcock, N. H., 1987. Late Caledonian (Acadian) transpression in north west England: timing, geometry and geotectonic significance. Proceedings of the Yorkshire Geological Society 46, 175192.CrossRefGoogle Scholar
Soper, N. J., & Woodcock, N. H., 1990. Silurian collision and sediment dispersal patterns in southern Britain. Geological Magazine 111, 527542.CrossRefGoogle Scholar
Upton, B. G., Aspen, P., & Hunter, R. H., 1984. Xenoliths and their implications for the deep geology of the Midland valley of Scotland and adjacent regions. Transactions of the Royal Society of Edinburgh: Earth Sciences 75, 6570.CrossRefGoogle Scholar
Van Breemen, O., & Hawkesworth, C. J., 1980. Sm–Nd isotopic study of garnets and their metamorphic host rocks. Transactions of the Royal Society of Edinburgh: Earth Sciences 75, 6570.Google Scholar
Wessel, P., & Smith, W. H. F., 1991. Free software helps map and display data. EOS 11, 445–6.Google Scholar
Whelan, J. P., Brown, C., Hutton, V. R. S., & Dawes, G. J. K., 1990. A geoelectric section across Ireland from magnetotelluric soundings. Physics of Earth and Planetary Interiors 60, 138–46.CrossRefGoogle Scholar
Williams, D. M., Harkin, J., Armstrong, H. A., & Higgs, K. T., 1994. A late Caledonian melange in western Ireland: implications for tectonic models. Journal of the Geological Society, London 151, 307–14.CrossRefGoogle Scholar
Williams, D. M., & Harper, D. A. T., 1988. A basin model for the Silurian of the Midland Valley of Scotland and Ireland. Journal of the Geological Society, London 145, 741–8.CrossRefGoogle Scholar
Williams, D. M., & Harper, D. A. T., 1991. Terranes in western Ireland, the geological evidence. Journal of the Geological Society, London 148, 165–71.CrossRefGoogle Scholar
Wilson, H. E., 1953. The petrography of the Old Red Sandstone rocks of the north of Ireland. Proceedings of the Royal Irish Academy 55B, 283320.Google Scholar
Yardley, B. W. D., 1980. Metamorphism and orogeny in the Irish Dalradian. Journal of the Geological Society, London 137, 303–9.CrossRefGoogle Scholar